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Re-marshalling in automated container yards with terminal appointment systems

机译:用终端预约系统重新编组自动化容器码

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AbstractAs a result of scarce land availability, growing competition and throughput, container terminals are increasing the stacking height of yard blocks to fulfil the demand for storage area. Due to inadequate retrieval information at initial stacking, shuffle moves can occur during retrieval operations as containers may be stacked in a sequence which does not correspond to the actual retrieval sequence. Automated stacking cranes can perform re-marshalling during periods of no crane workload to shift unproductive moves during retrieval operations to phases of idle time. Terminal appointment systems (TAS) enhance landside sequence information when external trucks (XT) announce their arrival beforehand. Under these circumstances, it is beneficial for terminal planers to understand the effects of using re-marshalling in combination with TAS. The purpose of this work is to introduce an online rule-based solution method for the re-marshalling problem with and without TAS. A simulation model of a fully operating yard block is used as environment to compare the proposed method with a benchmark heuristic from the literature. All tests are conducted for single and multiple Rail-Mounted-Gantry-Crane systems with different yard block sizes. It is also shown that solving the re-marshalling problem with the proposed algorithm generates results that reduce shuffle moves by 30% on average and by up to 50% in the best case, while always performing better in the worst case in comparison with not performing re-marshalling. Afterwards, influences on the method of selected TAS parameters are evaluated numerically. Results show that imprecise XT arrival information, not deviating above a certain threshold, significantly contribute to reducing congestion by mitigating XT waiting time and levelling arrival peaks. These benefits can be achieved without imposing restrictions on the arrival schedule preferred by XT companies.
机译:<标题>抽象 ara id =“par1”>由于稀缺土地可用性,越来越多的竞争和吞吐量,集装箱码头正在增加围场块的堆叠高度,以满足对存储区域的需求。由于初始堆叠的检索信息不足,在检索操作期间可以发生随机移动,因为容器可以以不对应于实际检索序列的序列堆叠。自动堆垛起重机可以在没有起重机工作负载期间进行重写的重建,以在检索操作期间向非生产性移动移位到空闲时间的阶段。终端预约系统(TAS)在外部卡车(XT)预先宣布其抵达时增强地面序列信息。在这种情况下,终端刨床是有益的,了解使用重新编组与TAS结合的影响。这项工作的目的是引入基于在线规则的解决方案方法,了解了在没有TAS的重新编组问题。完全操作码块的仿真模型用作环境,从文献中与基准启发式进行比较。所有测试都是针对单个和多个轨道安装架式起重机系统进行的,具有不同的庭院块尺寸。还表明,解决所提出的算法的重新编组问题会生成减少Shuffle在最佳情况下减少30%的结果,同时在与不执行的最坏情况下始终在最坏情况下表现更好重新编组。之后,在数值上评估对所选TA参数方法的影响。结果表明,不精确的XT到达信息,而不是偏离特定阈值,显着促进通过减轻XT等待时间和调平峰值来减少拥塞。可以实现这些益处,而不会对XT公司优先于到达时间表的限制。

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